Integrated Digital Regulation of a Indoor Illumination Using High Power White LED

碩士 === 國立高雄應用科技大學 === 電機工程系 === 99 === The traditional illumination sources are being replaced by high power white LED because of the advantages, such as small size, high efficiency, long life and others. Therefore, high-power white LED is used as the light source to design indoor lamps in this thes...

Full description

Bibliographic Details
Main Authors: Jin-Jhang Yang, 楊金璋
Other Authors: Ming-Tang Chen
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/55330131138425856332
id ndltd-TW-099KUAS8442029
record_format oai_dc
spelling ndltd-TW-099KUAS84420292015-10-16T04:02:47Z http://ndltd.ncl.edu.tw/handle/55330131138425856332 Integrated Digital Regulation of a Indoor Illumination Using High Power White LED 高功率白光LED室內照明之整合式數位調控 Jin-Jhang Yang 楊金璋 碩士 國立高雄應用科技大學 電機工程系 99 The traditional illumination sources are being replaced by high power white LED because of the advantages, such as small size, high efficiency, long life and others. Therefore, high-power white LED is used as the light source to design indoor lamps in this thesis. An AC-DC single-stage flyback converter was employed to implement the driving surce, and a Digital Signal Processor (DSP) is used to integrate the digital regulation of the converter and the dimming of the LED. The proposed method can increase the system efficiency and reduce the circuit size. In addition, the phase-shifted PWM method can decrease the conduction losses and improve the optical properties of the LED array. Finally, individual module was combined to produce a prototype, and the circuit characteristics of the system were tested and analyzed. The experimental results show that the prototype can operate with high power factor, high efficiency, and good optics. Ming-Tang Chen 陳明堂 2011 學位論文 ; thesis 131 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立高雄應用科技大學 === 電機工程系 === 99 === The traditional illumination sources are being replaced by high power white LED because of the advantages, such as small size, high efficiency, long life and others. Therefore, high-power white LED is used as the light source to design indoor lamps in this thesis. An AC-DC single-stage flyback converter was employed to implement the driving surce, and a Digital Signal Processor (DSP) is used to integrate the digital regulation of the converter and the dimming of the LED. The proposed method can increase the system efficiency and reduce the circuit size. In addition, the phase-shifted PWM method can decrease the conduction losses and improve the optical properties of the LED array. Finally, individual module was combined to produce a prototype, and the circuit characteristics of the system were tested and analyzed. The experimental results show that the prototype can operate with high power factor, high efficiency, and good optics.
author2 Ming-Tang Chen
author_facet Ming-Tang Chen
Jin-Jhang Yang
楊金璋
author Jin-Jhang Yang
楊金璋
spellingShingle Jin-Jhang Yang
楊金璋
Integrated Digital Regulation of a Indoor Illumination Using High Power White LED
author_sort Jin-Jhang Yang
title Integrated Digital Regulation of a Indoor Illumination Using High Power White LED
title_short Integrated Digital Regulation of a Indoor Illumination Using High Power White LED
title_full Integrated Digital Regulation of a Indoor Illumination Using High Power White LED
title_fullStr Integrated Digital Regulation of a Indoor Illumination Using High Power White LED
title_full_unstemmed Integrated Digital Regulation of a Indoor Illumination Using High Power White LED
title_sort integrated digital regulation of a indoor illumination using high power white led
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/55330131138425856332
work_keys_str_mv AT jinjhangyang integrateddigitalregulationofaindoorilluminationusinghighpowerwhiteled
AT yángjīnzhāng integrateddigitalregulationofaindoorilluminationusinghighpowerwhiteled
AT jinjhangyang gāogōnglǜbáiguāngledshìnèizhàomíngzhīzhěnghéshìshùwèidiàokòng
AT yángjīnzhāng gāogōnglǜbáiguāngledshìnèizhàomíngzhīzhěnghéshìshùwèidiàokòng
_version_ 1718090652528410624